Crystallizer Design Engine

Crystallizer Design Engine MCP Connector for Claude

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Designs crystallization equipment by applying kinetics to production requirements.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing crystallization processes. It allows AI agents to calculate critical parameters such as vessel sizing, thermal loads, and nucleation risks by applying crystallization kinetics. Use calculate_vessel_sizing to determine physical equipment dimensions, calculate_thermal_requirements to find necessary cooling or heating capacity, evaluate_nucleation_risk to prevent excessive fines, and optimize_residence_time to ensure target crystal sizes are met.

crystallizationkineticschemical-engineeringequipment-designprocess-optimization

4 tools expose this connector's capabilities to your AI agent.

calculate_thermal_requirements

Calculates the heating or cooling capacity needed to drive the crystallization

calculate_vessel_sizing

Determines the required physical size of the crystallizer based on production needs and growth kinetics

evaluate_nucleation_risk

Assesses whether the current design will result in excessive fines due to high nucleation rates

optimize_residence_time

Finds the ideal duration for crystals to remain in the vessel to meet size targets

See how to talk to your AI agent using Crystallizer Design Engine.

What size vessel do I need for a production rate of 500 kg/h with a target crystal size of 0.5 mm, a growth rate of 0.01 mm/h, and a residence time of 10 hours?

The required vessel volume is 1250 liters with a minimum height of 2.5 meters to accommodate the production and growth kinetics.

Calculate the cooling power needed for a production of 200 kg/h with a solubility delta of 50 and a specific heat capacity of 4.18.

The required cooling power is 4180 kW with a temperature gradient of 15 degrees.

Is there a risk of high nucleation if my supersaturation is 0.8, nucleation rate is 0.5, and growth rate is 0.1?

Yes, there is a high risk of producing excessive fines because the nucleation rate is significantly higher than the growth rate.

You can use the `calculate_vessel_sizing` tool. Provide the production rate, target mean size, growth rate, and required residence time to get the volume and height requirements.

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